Multivalent presentation of MPL by porous silicon microparticles favors T helper 1 polarization enhancing the anti-tumor efficacy of doxorubicin nanoliposomes.

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Title: Multivalent presentation of MPL by porous silicon microparticles favors T helper 1 polarization enhancing the anti-tumor efficacy of doxorubicin nanoliposomes.
Authors: Meraz IM; Nanomedicine, Houston Methodist Research Institute, Houston, Texas, United States of America., Hearnden CH; Adjuvant Research Group, School of Biochemistry and Immunology, Trinity Biomedical Sciences Institute, Trinity College, Dublin, Ireland., Liu X; Nanomedicine, Houston Methodist Research Institute, Houston, Texas, United States of America., Yang M; Adjuvant Research Group, School of Biochemistry and Immunology, Trinity Biomedical Sciences Institute, Trinity College, Dublin, Ireland; Advanced Materials and BioEngineering Research (AMBER), Centre for Research on Adaptive Nanostructures and Nanodevices (CRANN), Trinity College, Dublin, Ireland., Williams L; Adjuvant Research Group, School of Biochemistry and Immunology, Trinity Biomedical Sciences Institute, Trinity College, Dublin, Ireland; Advanced Materials and BioEngineering Research (AMBER), Centre for Research on Adaptive Nanostructures and Nanodevices (CRANN), Trinity College, Dublin, Ireland., Savage DJ; Michael E. DeBakey Department of Surgery, Baylor College of Medicine, Houston, Texas, United States of America; The University of Texas School of Medicine, Houston, Texas, United States of America., Gu J; Nanomedicine, Houston Methodist Research Institute, Houston, Texas, United States of America., Rhudy JR; Nanomedicine, Houston Methodist Research Institute, Houston, Texas, United States of America., Yokoi K; Nanomedicine, Houston Methodist Research Institute, Houston, Texas, United States of America., Lavelle EC; Adjuvant Research Group, School of Biochemistry and Immunology, Trinity Biomedical Sciences Institute, Trinity College, Dublin, Ireland; Advanced Materials and BioEngineering Research (AMBER), Centre for Research on Adaptive Nanostructures and Nanodevices (CRANN), Trinity College, Dublin, Ireland., Serda RE; Nanomedicine, Houston Methodist Research Institute, Houston, Texas, United States of America; Michael E. DeBakey Department of Surgery, Baylor College of Medicine, Houston, Texas, United States of America.
Source: PloS one [PLoS One] 2014 Apr 15; Vol. 9 (4), pp. e94703. Date of Electronic Publication: 2014 Apr 15 (Print Publication: 2014).
Publication Type: Journal Article; Research Support, Non-U.S. Gov't
Journal Info: Publisher: Public Library of Science Country of Publication: United States NLM ID: 101285081 Publication Model: eCollection Cited Medium: Internet ISSN: 1932-6203 (Electronic) Linking ISSN: 19326203 NLM ISO Abbreviation: PLoS One Subsets: MEDLINE
Database: MEDLINE Ultimate
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  Data: Multivalent presentation of MPL by porous silicon microparticles favors T helper 1 polarization enhancing the anti-tumor efficacy of doxorubicin nanoliposomes.
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  Data: <searchLink fieldCode="AU" term="%22Meraz+IM%22">Meraz IM</searchLink>; Nanomedicine, Houston Methodist Research Institute, Houston, Texas, United States of America.<br /><searchLink fieldCode="AU" term="%22Hearnden+CH%22">Hearnden CH</searchLink>; Adjuvant Research Group, School of Biochemistry and Immunology, Trinity Biomedical Sciences Institute, Trinity College, Dublin, Ireland.<br /><searchLink fieldCode="AU" term="%22Liu+X%22">Liu X</searchLink>; Nanomedicine, Houston Methodist Research Institute, Houston, Texas, United States of America.<br /><searchLink fieldCode="AU" term="%22Yang+M%22">Yang M</searchLink>; Adjuvant Research Group, School of Biochemistry and Immunology, Trinity Biomedical Sciences Institute, Trinity College, Dublin, Ireland; Advanced Materials and BioEngineering Research (AMBER), Centre for Research on Adaptive Nanostructures and Nanodevices (CRANN), Trinity College, Dublin, Ireland.<br /><searchLink fieldCode="AU" term="%22Williams+L%22">Williams L</searchLink>; Adjuvant Research Group, School of Biochemistry and Immunology, Trinity Biomedical Sciences Institute, Trinity College, Dublin, Ireland; Advanced Materials and BioEngineering Research (AMBER), Centre for Research on Adaptive Nanostructures and Nanodevices (CRANN), Trinity College, Dublin, Ireland.<br /><searchLink fieldCode="AU" term="%22Savage+DJ%22">Savage DJ</searchLink>; Michael E. DeBakey Department of Surgery, Baylor College of Medicine, Houston, Texas, United States of America; The University of Texas School of Medicine, Houston, Texas, United States of America.<br /><searchLink fieldCode="AU" term="%22Gu+J%22">Gu J</searchLink>; Nanomedicine, Houston Methodist Research Institute, Houston, Texas, United States of America.<br /><searchLink fieldCode="AU" term="%22Rhudy+JR%22">Rhudy JR</searchLink>; Nanomedicine, Houston Methodist Research Institute, Houston, Texas, United States of America.<br /><searchLink fieldCode="AU" term="%22Yokoi+K%22">Yokoi K</searchLink>; Nanomedicine, Houston Methodist Research Institute, Houston, Texas, United States of America.<br /><searchLink fieldCode="AU" term="%22Lavelle+EC%22">Lavelle EC</searchLink>; Adjuvant Research Group, School of Biochemistry and Immunology, Trinity Biomedical Sciences Institute, Trinity College, Dublin, Ireland; Advanced Materials and BioEngineering Research (AMBER), Centre for Research on Adaptive Nanostructures and Nanodevices (CRANN), Trinity College, Dublin, Ireland.<br /><searchLink fieldCode="AU" term="%22Serda+RE%22">Serda RE</searchLink>; Nanomedicine, Houston Methodist Research Institute, Houston, Texas, United States of America; Michael E. DeBakey Department of Surgery, Baylor College of Medicine, Houston, Texas, United States of America.
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  Data: <searchLink fieldCode="JN" term="%22101285081%22">PloS one</searchLink> [PLoS One] 2014 Apr 15; Vol. 9 (4), pp. e94703. <i>Date of Electronic Publication: </i>2014 Apr 15 (<i>Print Publication: </i>2014).
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